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Implementation of a multi-waveband, high-precision, wideband waveform generator based on DDWS for antenna channel characteristics test

机译:基于DDWS的多波段高精度宽带波形发生器的实现,用于天线信道特性测试

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In practical radar systems, amplitude and phase distortion exists in antenna channels, which has a bad effect on subsequent signal processing. So, waveform generator is needed to launch signals covering radar waveband to make a channel test. Ensuring accuracy and bandwidth of the waveform generator is a fundamental requirement. Accordingly, this paper proposed a full flow of wideband waveform generation, including hardware design, parameter selection and pre-distortion correction. Direct digital waveform synthesize (DDWS) is done in the first, second, or third Nyquist region without analog frequency conversion, ensuring the quality of the waveform. And pre-distortion measures are taken to correct the waveform reconstruction error. The waveform generator designed in this paper has been successfully applied in a digital array radar (DAR) system, which can generate 500MHz bandwidth LFM signal, covering multiple waveband including 0.65 GHz-1.15 GHz, 1.25 GHz-1.75 GHz, 1.85 GHz-2.35 GHz, 2.45 GHz-2.95 GHz.
机译:在实际的雷达系统中,天线信道中存在幅度和相位失真,这对后续信号处理产生不利影响。因此,需要波形发生器来发射覆盖雷达波段的信号以进行信道测试。确保波形发生器的准确性和带宽是一项基本要求。因此,本文提出了宽带波形生成的完整流程,包括硬件设计,参数选择和预失真校正。直接数字波形合成(DDWS)在第一,第二或第三奈奎斯特区域中完成,无需进行模拟频率转换,从而确保了波形的质量。并采取了预失真措施来校正波形重建误差。本文设计的波形发生器已成功应用于数字阵列雷达(DAR)系统中,该系统可以产生500MHz带宽的LFM信号,覆盖多个波段,包括0.65 GHz-1.15 GHz,1.25 GHz-1.75 GHz,1.85 GHz-2.35 GHz ,2.45 GHz-2.95 GHz。

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